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//! Checks for needless boolean results of if-else expressions
//!
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//! This lint is **warn** by default
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use rustc ::lint ::* ;
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use rustc_front ::hir ::* ;
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use syntax ::ast ::LitKind ;
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use syntax ::codemap ::Spanned ;
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use utils ::{ span_lint , span_lint_and_then , snippet , snippet_opt } ;
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/// **What it does:** This lint checks for expressions of the form `if c { true } else { false }` (or vice versa) and suggest using the condition directly.
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///
/// **Why is this bad?** Redundant code.
///
/// **Known problems:** Maybe false positives: Sometimes, the two branches are painstakingly documented (which we of course do not detect), so they *may* have some value. Even then, the documentation can be rewritten to match the shorter code.
///
/// **Example:** `if x { false } else { true }`
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declare_lint! {
pub NEEDLESS_BOOL ,
Warn ,
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" if-statements with plain booleans in the then- and else-clause, e.g. \
` if p { true } else { false } ` "
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}
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/// **What it does:** This lint checks for expressions of the form `x == true` (or vice versa) and suggest using the variable directly.
///
/// **Why is this bad?** Unnecessary code.
///
/// **Known problems:** None.
///
/// **Example:** `if x == true { }` could be `if x { }`
declare_lint! {
pub BOOL_COMPARISON ,
Warn ,
" comparing a variable to a boolean, e.g. \
` if x = = true ` "
}
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#[ derive(Copy,Clone) ]
pub struct NeedlessBool ;
impl LintPass for NeedlessBool {
fn get_lints ( & self ) -> LintArray {
lint_array! ( NEEDLESS_BOOL )
}
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}
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impl LateLintPass for NeedlessBool {
fn check_expr ( & mut self , cx : & LateContext , e : & Expr ) {
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use self ::Expression ::* ;
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if let ExprIf ( ref pred , ref then_block , Some ( ref else_expr ) ) = e . node {
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let reduce = | hint : & str , not | {
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let hint = match snippet_opt ( cx , pred . span ) {
Some ( pred_snip ) = > format! ( " ` {} {} ` " , not , pred_snip ) ,
None = > hint . into ( ) ,
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} ;
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span_lint_and_then ( cx ,
NEEDLESS_BOOL ,
e . span ,
" this if-then-else expression returns a bool literal " , | db | {
db . span_suggestion ( e . span , " you can reduce it to " , hint ) ;
} ) ;
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} ;
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match ( fetch_bool_block ( then_block ) , fetch_bool_expr ( else_expr ) ) {
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( RetBool ( true ) , RetBool ( true ) ) |
( Bool ( true ) , Bool ( true ) ) = > {
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span_lint ( cx ,
NEEDLESS_BOOL ,
e . span ,
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" this if-then-else expression will always return true " ) ;
}
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( RetBool ( false ) , RetBool ( false ) ) |
( Bool ( false ) , Bool ( false ) ) = > {
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span_lint ( cx ,
NEEDLESS_BOOL ,
e . span ,
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" this if-then-else expression will always return false " ) ;
}
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( RetBool ( true ) , RetBool ( false ) ) = > reduce ( " its predicate " , " return " ) ,
( Bool ( true ) , Bool ( false ) ) = > reduce ( " its predicate " , " " ) ,
( RetBool ( false ) , RetBool ( true ) ) = > reduce ( " `!` and its predicate " , " return ! " ) ,
( Bool ( false ) , Bool ( true ) ) = > reduce ( " `!` and its predicate " , " ! " ) ,
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_ = > ( ) ,
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}
}
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}
}
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#[ derive(Copy,Clone) ]
pub struct BoolComparison ;
impl LintPass for BoolComparison {
fn get_lints ( & self ) -> LintArray {
lint_array! ( BOOL_COMPARISON )
}
}
impl LateLintPass for BoolComparison {
fn check_expr ( & mut self , cx : & LateContext , e : & Expr ) {
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use self ::Expression ::* ;
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if let ExprBinary ( Spanned { node : BiEq , .. } , ref left_side , ref right_side ) = e . node {
match ( fetch_bool_expr ( left_side ) , fetch_bool_expr ( right_side ) ) {
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( Bool ( true ) , Other ) = > {
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let hint = snippet ( cx , right_side . span , " .. " ) . into_owned ( ) ;
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span_lint_and_then ( cx ,
BOOL_COMPARISON ,
e . span ,
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" equality checks against true are unnecessary " ,
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| db | {
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db . span_suggestion ( e . span , " try simplifying it as shown: " , hint ) ;
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} ) ;
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}
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( Other , Bool ( true ) ) = > {
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let hint = snippet ( cx , left_side . span , " .. " ) . into_owned ( ) ;
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span_lint_and_then ( cx ,
BOOL_COMPARISON ,
e . span ,
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" equality checks against true are unnecessary " ,
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| db | {
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db . span_suggestion ( e . span , " try simplifying it as shown: " , hint ) ;
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} ) ;
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}
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( Bool ( false ) , Other ) = > {
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let hint = format! ( " ! {} " , snippet ( cx , right_side . span , " .. " ) ) ;
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span_lint_and_then ( cx ,
BOOL_COMPARISON ,
e . span ,
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" equality checks against false can be replaced by a negation " ,
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| db | {
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db . span_suggestion ( e . span , " try simplifying it as shown: " , hint ) ;
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} ) ;
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}
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( Other , Bool ( false ) ) = > {
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let hint = format! ( " ! {} " , snippet ( cx , left_side . span , " .. " ) ) ;
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span_lint_and_then ( cx ,
BOOL_COMPARISON ,
e . span ,
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" equality checks against false can be replaced by a negation " ,
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| db | {
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db . span_suggestion ( e . span , " try simplifying it as shown: " , hint ) ;
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} ) ;
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}
_ = > ( ) ,
}
}
}
}
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enum Expression {
Bool ( bool ) ,
RetBool ( bool ) ,
Other ,
}
fn fetch_bool_block ( block : & Block ) -> Expression {
match ( & * block . stmts , block . expr . as_ref ( ) ) {
( [ ] , Some ( e ) ) = > fetch_bool_expr ( & * * e ) ,
( [ ref e ] , None ) = > if let StmtSemi ( ref e , _ ) = e . node {
if let ExprRet ( _ ) = e . node {
fetch_bool_expr ( & * * e )
} else {
Expression ::Other
}
} else {
Expression ::Other
} ,
_ = > Expression ::Other ,
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}
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}
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fn fetch_bool_expr ( expr : & Expr ) -> Expression {
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match expr . node {
ExprBlock ( ref block ) = > fetch_bool_block ( block ) ,
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ExprLit ( ref lit_ptr ) = > {
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if let LitKind ::Bool ( value ) = lit_ptr . node {
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Expression ::Bool ( value )
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} else {
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Expression ::Other
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}
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} ,
ExprRet ( Some ( ref expr ) ) = > match fetch_bool_expr ( expr ) {
Expression ::Bool ( value ) = > Expression ::RetBool ( value ) ,
_ = > Expression ::Other ,
} ,
_ = > Expression ::Other ,
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}
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}